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762 results for “victoria”

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zenodo40/100

Figure 1. Lissodesmus perporosus Jeekel, 1984 in The millipede genus Lissodesmus Chamberlin, 1920 (Diplopoda: Polydesmida: Dalodesmidae) from Tasmania and Victoria, with descriptions of a new genus and 24 new species

Figure 1. Lissodesmus perporosus Jeekel, 1984, male. Left lateral view of midbody paranotum, showing posterior corner seta (arrow). Scale bar = 1.0 mm.

opencc-by-4.0Dec 2005View details →
zenodo40/100

Figure 6 in The millipede genus Lissodesmus Chamberlin, 1920 (Diplopoda: Polydesmida: Dalodesmidae) from Tasmania and Victoria, with descriptions of a new genus and 24 new species

Figure 6. (A) L. latus sp. nov., male paratype ex QVM 23:17490, (B) L. hamatus sp. nov., male paratype ex QVM 23:16073. SEM views of a group of limbus elements on a midbody segment. Scale bars = 0.025 mm; anterior is to the left.

opencc-by-4.0Dec 2005View details →
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Figure 3 in The millipede genus Lissodesmus Chamberlin, 1920 (Diplopoda: Polydesmida: Dalodesmidae) from Tasmania and Victoria, with descriptions of a new genus and 24 new species

Figure 3. Diagrammatic posterior (left) and dorsal (right) views of a polydesmidan midbody segment, showing measurement limits for height H, prozonite width wp and paranotal width wm. Relative paranotal width R = wm/wp.

opencc-by-4.0Dec 2005View details →
zenodo40/100

Figure 14. L. alisonae Jeekel, 1984 in The millipede genus Lissodesmus Chamberlin, 1920 (Diplopoda: Polydesmida: Dalodesmidae) from Tasmania and Victoria, with descriptions of a new genus and 24 new species

Figure 14. L. alisonae Jeekel, 1984, males from Franklin Village near Launceston (left), ex QVM 23:15440, and "Bowood" property near Bridport (right), ex QVM 23:15442. Lateral views of right gonopod telopodite. Scale bar = 0.25 mm.

opencc-by-4.0Dec 2005View details →
dryad40/100

Temporally consistent species differences in parasite infection but no evidence for rapid parasite-mediated speciation in Lake Victoria cichlid fish

Open the record for dataset details and reuse information.

publicMar 2020View details →
dryad40/100

Testing alternative hypotheses for the decline of cichlid fish in Lake Victoria using fish fossils time series from sediment cores

Open the record for dataset details and reuse information.

publicMar 2024View details →
dryad40/100

Data from: Testing for a role of postzygotic incompatibilities in rapidly speciated Lake Victoria cichlids

Open the record for dataset details and reuse information.

publicJan 2024View details →
zenodo36/100

Figure 3 in First records of Maratus robinsoni Otto & Hill 2012 and Maratus vultus Otto & Hill 2016 (Araneae: Salticidae: Euophryini: Maratus Karsch 1878) from Victoria, Australia

Figure 3. Images of the habitus of the Maratus vultus specimens collected in Kaniva, Victoria. A, Male #1 dorsolateral view. B, Male #1 dorsal view. C, Male #2 anterolateral view. 4, Male #2 anterior view.

opencc-by-nd-4.0Apr 2020View details →
dryad36/100

Genetic architecture of a key reproductive isolation trait differs between sympatric and non-sympatric sister species of Lake Victoria cichlids

One hallmark of the East African cichlid radiations is the rapid evolution of reproductive isolation that is robust to full sympatry of many closely related species. Theory predicts that species persistence and speciation in sympatry with gene flow are facilitated if loci of large effect or physical linkage (or pleiotropy) underlie traits involved in reproductive isolation. Here we investigate the genetic architecture of a key trait involved in behavioural isolation, male nuptial coloration, by crossing two sister species pairs of Lake Victoria cichlids of the genus <i>Pundamilia</i> and mapping nuptial coloration in the F2 hybrids. One is a young sympatric species pair, representative of an axis of colour motif differentiation, red-dorsum vs blue, that is highly recurrent in closely related sympatric species. The other is a species pair representative of colour motifs, red-chest vs blue, that are common in allopatric but uncommon in sympatric closely related species. We find significant QTLs with moderate to large effects (some overlapping) for red and yellow in the sympatric red-dorsum x blue cross, whereas we find no significant QTLs in the non-sympatric red-chest x blue cross. These findings are consistent with theory predicting that large effect loci or linkage/pleiotropy underlying mating trait differentiation could facilitate speciation and species persistence with gene flow in sympatry.

opencc-zeroMar 2020View details →
zenodo36/100

Police Telephone Post Queen Victoria Street

A police telephone post on the corner of Queen Victoria Street and Friday Street, London. Next to it is an "ELECTRO-MATIC TRAFFIC CONTROL SYSTEM" box. 248 photos taken in September 2020 with a Sony a6000 and processed in Reality Capture. Source: Objaverse 1.0 / Sketchfab

opencc-bySep 2020View details →
zenodo36/100

Queen Victoria bust

Discover the [Ballarat Town Hall collection](http://www.hulballarat.org.au/cb_pages/rediscovering_town_hall_vaults.php) today. Model developed by ![](http://digitalheritageaustralia.com/images/purplelogo.jpg) [Digital Heritage Australia ](http://digitalheritageaustralia.com) Source: Objaverse 1.0 / Sketchfab

opencc-byJun 2017View details →
zenodo36/100

Figure 2. - ATruncatoflabellumphoenix, paratypes, USNM 82010, Kermadec Ridge B Truncatoflabellumgippslandicum: upper lateral and edge views, NMV P133990; lower lateral and calicular views, syntype, NMV P27064, Miocene of Gippsland lake region of Victoria C Truncatoflabellumvictoriae, USNM 67962, Muddy Creek, Victoria (Balcombian = Middle Miocene) D Truncatoflabellumdens, USNM 98889, MUSORSTOM 7-569, Vanuatu. Scale bars: 2 mm (A); 10 mm (B); 5 mm (C–D).

Figure 2. - ATruncatoflabellumphoenix, paratypes, USNM 82010, Kermadec Ridge B Truncatoflabellumgippslandicum: upper lateral and edge views, NMV P133990; lower lateral and calicular views, syntype, NMV P27064, Miocene of Gippsland lake region of Victoria C Truncatoflabellumvictoriae, USNM 67962, Muddy Creek, Victoria (Balcombian = Middle Miocene) D Truncatoflabellumdens, USNM 98889, MUSORSTOM 7-569, Vanuatu. Scale bars: 2 mm (A); 10 mm (B); 5 mm (C–D).

opencc-by-4.0Feb 2017View details →
zenodo36/100

Figure 4. - ATruncatoflabellummacroeschara, paratype, USNM 96661, Onslow Island, Western Australia B Truncatoflabellumveroni, paratype, USNM 96655, Soela 54A, Western Australia C Truncatoflabellumgambierense, USNM 1295473, USGS 10809, Balcombe's Bay, Victoria (Balcombian = Middle Miocene) D Truncatoflabellumirregulare, USNM 87713, Japan. Scale bars: all 10 mm.

Figure 4. - ATruncatoflabellummacroeschara, paratype, USNM 96661, Onslow Island, Western Australia B Truncatoflabellumveroni, paratype, USNM 96655, Soela 54A, Western Australia C Truncatoflabellumgambierense, USNM 1295473, USGS 10809, Balcombe's Bay, Victoria (Balcombian = Middle Miocene) D Truncatoflabellumirregulare, USNM 87713, Japan. Scale bars: all 10 mm.

opencc-by-4.0Feb 2017View details →
zenodo36/100

Figure 8. - ATruncatoflabellumcumingi, neotype, USNM 81976, Te Vega 1-54, Indonesia B Truncatoflabellumvanuatu, holotype, USNM 71860, Pleistocene of Vanuatu C Truncatoflabellumduncani, paratype, USNM M353592, Balcombe's Bay, Victoria (Balcombian = Middle Miocene) D Truncatoflabellummultispinosum, paratype, USNM 91741, South Africa. Scale bars: all 10 mm, except for basal scar views of B and C.

Figure 8. - ATruncatoflabellumcumingi, neotype, USNM 81976, Te Vega 1-54, Indonesia B Truncatoflabellumvanuatu, holotype, USNM 71860, Pleistocene of Vanuatu C Truncatoflabellumduncani, paratype, USNM M353592, Balcombe's Bay, Victoria (Balcombian = Middle Miocene) D Truncatoflabellummultispinosum, paratype, USNM 91741, South Africa. Scale bars: all 10 mm, except for basal scar views of B and C.

opencc-by-4.0Feb 2017View details →
zenodo36/100

Drinking Fountain Victoria Embankment Gardens

A drinking fountain in Victoria Embankment Gardens, London. Date: 1886 http://www.mdfcta.co.uk/details-f/f092.html Photos taken in January 2019 with a Sony a6000 and processed in Agisoft Metashape. Source: Objaverse 1.0 / Sketchfab

opencc-byJan 2019View details →
zenodo36/100

Bust of Queen Victoria

Bust of Queen Victoria, late 19th century. Depicting Victoria towards the end of her reign, she wears a crown a sash over her dress. 3D model digitised from an original object in the collections of Royal Pavilion &amp; Museums, Brighton &amp; Hove. Digitisation conducted by the University of Brighton's Cultural Informatics Group as part of work supporting the creation of the Hove Plinth on the Brighton &amp; Hove seafront. Source: Objaverse 1.0 / Sketchfab

opencc-by-sa-2.5May 2018View details →
zenodo36/100

Bronze statue Roman goddess Victoria (70-250 AD)

Here we see the Roman goddess Victoria with open wings and flapping chiton, descending on the globe. Both her dress and her hair are extremely detailed. Unfortunately, one of the wings and both arms are damaged. So we have to guess about her possible attributes, such as a laurel wreath and/or a palm branch. **For more information about our collections, visit us at:** [Provinciaal depot voor archeologie Noord-Holland](http://collectie.huisvanhilde.nl/?query=Records/relatedid=[Object39637]&amp;label=Zoekopdracht&amp;showtype=record()) Model by: [Virtutim](http://virtutim.eu), Sara Gonizzi Barsanti Source: Objaverse 1.0 / Sketchfab

opencc-byOct 2016View details →
dryad36/100

Data from: Sympatry and parapatry among rocky reef cichlids of Lake Victoria explained by female mating preferences

<p><span>Work on the Lake Victoria cichlids <em>Pundamilia nyererei</em> (red dorsum males, deeper water), <em>Pundamilia pundamilia</em> (blue males, shallower water) and related species pairs has provided insights into processes of speciation. Here, we investigate female mating behaviour of five <em>Pundamilia </em>species and four of their F1-hybrids through mate choice trials and paternity testing. We discuss the results in the context of the geography of speciation and coexistence. Complete assortative mating was observed among all sympatric species. Parapatric species with similar depth habitat distributions interbred whereas other parapatric and allopatric species showed complete assortative mating. F1-hybrids mated exclusively with species accepted by females of the parental species. Although consistent with reinforcement in sympatry, a closer look at our results suggests otherwise and it is more likely that pre-existing female preferences influence which taxa can co-exist in sympatry. Regardless of the mechanism, mating preferences may influence species distribution in potentially hybridizing taxa, such as in the adaptive radiations of cichlid fish. We suggest that this at least partly explains why some species fail to establish breeding populations in locations where they are occasionally recorded. Our result support the notion that mating preferences of potentially cross-breeding species ought to be included in coexistence theory.</span></p>

opencc-zeroJan 2024View details →
zenodo36/100

Figure 7 in The death adder Acanthophis antarcticus (Shaw & Nodder, 1802) in Victoria: historical records and contemporary uncertainty

Figure 7. First edition of the Dangerous Snakes of Victoria poster, produced in 1877.

opencc-by-4.0Dec 2018View details →
zenodo36/100

Figure 4 in The death adder Acanthophis antarcticus (Shaw & Nodder, 1802) in Victoria: historical records and contemporary uncertainty

Figure 4. Dorsal perspective of the head and neck (including neck wound) of specimen D4349.

opencc-by-4.0Dec 2018View details →

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Last verified 2026-04-29Open record